首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >Optimization of Conditions for the Biotransformation of 5-Cyanovaleramide from Adiponitrile by Rhodococcus ruber CGMCC 3090
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Optimization of Conditions for the Biotransformation of 5-Cyanovaleramide from Adiponitrile by Rhodococcus ruber CGMCC 3090

机译:红球菌CGMCC 3090优化己二腈5-氰基戊酰胺生物转化的条件

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摘要

Abstract-Adiponitrile was regioselectively converted to 5-cyanovaleramide as the single product using resting cells of Rhodococcus ruber CGMCC3090. In this research, the reaction characteristics of regioselective biotransformation of adiponitrile to 5-cyanovaleramide using Rhodococcus ruber CGMCC3090 was studied, and the reaction conditions were optimized. As a result, the optimum reaction temperature and pH were 300;C and 7.5, respectively. The deactivation energy of the reaction was 20.91 kJ/mol according to Arrhenius equation. Bioconversion capacity was increased by 10% with adding 2.5% (V/V) methanol in the reaction system. When 10-4 mol/L of Co2+ was added to the reaction system, the conversion ratio was increased by 40%. However, the enzyme activity was significantly inhibited by 10-4 mol/L of Zn2+ or Cu2+. Under optimal conditions, 1.5 mol/L adiponitrile was converted to 5-cyanovaleramide with the cell concentration of 0.88 g/L, with the transformation ratio and regioselectiverty of both 100%.
机译:摘要利用红球菌CGMCC3090的静息细胞将己二腈区域选择性地转化为5-氰基戊酰胺。本研究利用红球菌CGMCC3090研究了己二腈向5-氰基戊酰胺的区域选择性生物转化的反应特性,并优化了反应条件。结果,最佳反应温度和pH分别为300℃和7.5。根据Arrhenius方程,反应的失活能为20.91kJ / mol。通过在反应系统中添加2.5%(V / V)甲醇,生物转化能力提高了10%。当向反应体系中添加10-4 mol / L的Co2 +时,转化率提高了40%。但是,酶活性被10-4 mol / L的Zn2 +或Cu2 +显着抑制。在最佳条件下,将1.5 mol / L的己二腈转化为5-氰基戊酰胺,细胞浓度为0.88 g / L,转化率和区域选择性均为100%。

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